TY - JOUR
T1 - EXPERIMENTAL AND NUMERICAL INVESTIGATION OF DUCTED SPRAY WITH DUAL INJECTION STRATEGIES
AU - Wang, Zhaojian
AU - Liang, Tong
AU - Zhang, Yuxin
AU - Wang, Ziman
PY - 2023
Y1 - 2023
N2 - Ducted fuel injection (DFI) is a newly established technology showing great potential in breaking the soot/NOx trade-off. Multiple-injection strategy is also seen as a possible way to reduce soot and NOx emissions simultaneously. However, the applicability of these approaches is not fully understood. To address thism, the spray characteristics of DFI technology coupled with a dual-injection strategy were studied. Results showed that during the injection interval (the interval between two injections), ambient gas continues to flow into the duct due to the pressure difference between the duct inside and outside, which increases the velocity of the second injection. The spray penetration length development of ducted spray is faster than that of free spray in both the first and the second injection events. During the first injection, the distribution of the equivalence ratio of ducted spray is more uniform than free spray, and the peak value of the equivalence ratio of ducted spray is lower than that of free spray. Compared to the first injection, in the second injection, when the radial equivalence ratio distribution of ducted spray is equivalent to the that of free injection, the path of spray traversed is shorter.
AB - Ducted fuel injection (DFI) is a newly established technology showing great potential in breaking the soot/NOx trade-off. Multiple-injection strategy is also seen as a possible way to reduce soot and NOx emissions simultaneously. However, the applicability of these approaches is not fully understood. To address thism, the spray characteristics of DFI technology coupled with a dual-injection strategy were studied. Results showed that during the injection interval (the interval between two injections), ambient gas continues to flow into the duct due to the pressure difference between the duct inside and outside, which increases the velocity of the second injection. The spray penetration length development of ducted spray is faster than that of free spray in both the first and the second injection events. During the first injection, the distribution of the equivalence ratio of ducted spray is more uniform than free spray, and the peak value of the equivalence ratio of ducted spray is lower than that of free spray. Compared to the first injection, in the second injection, when the radial equivalence ratio distribution of ducted spray is equivalent to the that of free injection, the path of spray traversed is shorter.
KW - Ducted fuel injection
KW - diesel spray
KW - dual injection strategies
UR - http://www.scopus.com/inward/record.url?scp=85172371311&partnerID=8YFLogxK
U2 - 10.1615/AtomizSpr.2023046365
DO - 10.1615/AtomizSpr.2023046365
M3 - Article
AN - SCOPUS:85172371311
SN - 1044-5110
VL - 33
SP - 21
EP - 46
JO - Atomization and Sprays
JF - Atomization and Sprays
IS - 5
ER -